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配体与血红素蛋白的结合:II. 肌红蛋白血红素口袋中的转变

Ligand binding to heme proteins: II. Transitions in the heme pocket of myoglobin.

作者信息

Mourant J R, Braunstein D P, Chu K, Frauenfelder H, Nienhaus G U, Ormos P, Young R D

机构信息

Department of Physics, University of Illinois at Urbana-Champaign 61801-3080.

出版信息

Biophys J. 1993 Oct;65(4):1496-507. doi: 10.1016/S0006-3495(93)81218-9.

Abstract

Phenomena occurring in the heme pocket after photolysis of carbonmonoxymyoglobin (MbCO) below about 100 K are investigated using temperature-derivative spectroscopy of the infrared absorption bands of CO. MbCO exists in three conformations (A substrates) that are distinguished by the stretch bands of the bound CO. We establish connections among the A substates and the substates of the photoproduct (B substates) using Fourier-transform infrared spectroscopy together with kinetic experiments on MbCO solution samples at different pH and on orthorhombic crystals. There is no one-to-one mapping between the A and B substates; in some cases, more than one B substate corresponds to a particular A substate. Rebinding is not simply a reversal of dissociation; transitions between B substates occur before rebinding. We measure the nonequilibrium populations of the B substates after photolysis below 25 K and determine the kinetics of B substate transitions leading to equilibrium. Transitions between B substates occur even at 4 K, whereas those between A substates have only been observed above about 160 K. The transitions between the B substates are nonexponential in time, providing evidence for a distribution of substates. The temperature dependence of the B substate transitions implies that they occur mainly by quantum-mechanical tunneling below 10 K. Taken together, the observations suggest that the transitions between the B substates within the same A substate reflect motions of the CO in the heme pocket and not conformational changes. Geminate rebinding of CO to Mb, monitored in the Soret band, depends on pH. Observation of geminate rebinding to the A substates in the infrared indicates that the pH dependence results from a population shift among the substates and not from a change of the rebinding to an individual A substate.

摘要

利用一氧化碳(CO)红外吸收带的温度导数光谱,研究了在约100 K以下光解一氧化碳肌红蛋白(MbCO)后血红素口袋中发生的现象。MbCO以三种构象(A亚基)存在,这些构象通过结合的CO的伸缩带区分。我们使用傅里叶变换红外光谱以及在不同pH值下对MbCO溶液样品和正交晶体进行的动力学实验,建立了A亚基与光产物的亚基(B亚基)之间的联系。A亚基和B亚基之间不存在一一对应关系;在某些情况下,不止一个B亚基对应于特定的A亚基。重新结合不仅仅是解离的逆转;在重新结合之前会发生B亚基之间的转变。我们测量了25 K以下光解后B亚基的非平衡态种群,并确定了导致平衡的B亚基转变动力学。即使在4 K时也会发生B亚基之间的转变,而A亚基之间的转变仅在约160 K以上才被观察到。B亚基之间的转变在时间上是非指数性的,这为亚基分布提供了证据。B亚基转变的温度依赖性表明,它们主要在10 K以下通过量子力学隧穿发生。综合来看,这些观察结果表明,同一A亚基内B亚基之间的转变反映了血红素口袋中CO的运动,而不是构象变化。在Soret带监测到的CO与Mb的双分子重新结合取决于pH值。在红外光谱中观察到CO与A亚基的双分子重新结合表明,pH依赖性是由于亚基之间的种群转移,而不是由于单个A亚基重新结合的变化。

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